Key result
Aspirin and its major metabolites, particularly salicyluric acid and gentisic acid, inhibit TAFIa carboxypeptidase activity and accelerate fibrin clot dissolution in vitro.
Why the study?
Do aspirin and its metabolites inhibit thrombin-activatable fibrinolysis inhibitor (TAFI) in vitro?
Do aspirin and its metabolites inhibit thrombin-activatable fibrinolysis inhibitor (TAFI) in vitro?
Aspirin and its metabolites inhibit TAFI, revealing a novel profibrinolytic mechanism that may contribute to both its antithrombotic efficacy and hemorrhagic complications.
May suggest novel profibrinolytic aspirin action; hypothesis-generating in vitro data leave clinical relevance open.
The use of aspirin is widely recommended for the prevention of heart attacks owing to its ability to inhibit platelet activation by irreversibly blocking cyclooxygenase 1. However, aspirin also affects the fibrinolytic and hemostatic pathways by mechanisms that are not well understood, causing severe hemorrhagic complications. Here, we investigated the ability of aspirin and aspirin metabolites to inhibit thrombin-activatable fibrinolysis inhibitor (TAFI), the major inhibitor of plasma fibrinolysis. TAFI is activated via proteolytic cleavage by the thrombin-thrombomodulin complex to TAFIa, a carboxypeptidase B-like enzyme. TAFIa modulates fibrinolysis by removing the C-terminal arginine and lysine residues from partially degraded fibrin, which in turn inhibits the binding of plasminogen to fibrin clots. Aspirin and its major metabolites, salicylic acid, gentisic acid, and salicyluric acid, inhibit TAFIa carboxypeptidase activity. Salicyluric acid effectively blocks activation of TAFI by thrombin-thrombomodulin; however, salicylates do not inhibit carboxypeptidase N or pancreatic carboxypeptidase B. Aspirin and other salicylates accelerated the dissolution of fibrin clots and reduced thrombus formation in an in vitro model of fibrinolysis. Inhibition of TAFI represents a novel hemostatic mechanism that contributes to aspirin's therapy-associated antithrombotic activity and hemorrhagic complications.
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An et al. (2012) studied Thrombosis / Fibrinolysis (in vitro). Aspirin and its metabolites (salicylic acid, gentisic acid, salicyluric acid) vs. Buffer or other NSAIDs (ibuprofen, acetaminophen) was evaluated on Inhibition of TAFIa carboxypeptidase activity and clot lysis time. Aspirin and its major metabolites, particularly salicyluric acid and gentisic acid, inhibit TAFIa carboxypeptidase activity and accelerate fibrin clot dissolution in vitro.
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